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Cold Roll Forming Process and Die Design for Double-Gutter Frame of Drawer Slider

机译:抽屉滑块双管框架冷轧成型工艺和模具设计

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In this paper, the main focus is to demonstrate a systematic method of designing the roll flower and corresponding dies for a double-gutter frame applied to the drawer slider. The blank development method was proposed to calculate the width of blank for bending with small radii. The cold roll forming process design was based on the maximum longitudinal strain minimization and the interference of rolls with the double-gutter geometry of product profile. Extra pre-bending was designed to avoid the occurrence of blank collision during forming process. The FEM method was adopted to evaluate the process and die designs. Due to the geometry complexity of the product, strain distribution is uneven which results in more spring back and stress concentration. A geometry setting design was proposed to create local strain redistribution and smooth strain distribution of entire section profile after final forming step. Using geometry setting die design, the spring back at the end point and the gutter areas of final product section are 0.07 mm and 0.1 mm, respectively. Without the geometry setting die design, the spring back at the end point and the gutter areas of final product section are 0.11 mm and 0.15 mm, respectively. The simulation results demonstrate the proposed methods are able to improve the accuracy of cold roll forming products.
机译:在本文中,主要焦点是展示设计卷花的系统方法,以及施加到抽屉滑块的双管框架的相应模具。建议使用小半径弯曲的空白开发方法计算空白宽度。冷辊形成过程设计基于具有产品型材的双沟几何形状的辊辊的最大纵向应变最小化和干扰。额外的预先弯曲旨在避免在成型过程中发生空白碰撞。采用有限元方法来评估过程和模具设计。由于产品的几何复杂性,应变分布不均匀,导致更多的弹簧背部和应力集中。建议在最终形成步骤后创建几何设置设计来创造局部应变重新分布和整个截面轮廓的平稳应变分布。使用几何设定模具设计,终点的弹簧和最终产品部分的排水沟区分别为0.07 mm和0.1mm。如果没有几何设置模具设计,则分别在终点的弹簧和最终产品部分的排水沟区域分别为0.11mm和0.15mm。仿真结果证明了所提出的方法能够提高冷轧成型产品的准确性。

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